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嗅味觉和三叉神经相关电位的时空比较。

A spatiotemporal comparison between olfactory and trigeminal event-related potentials.

机构信息

Smell & Taste Clinic, Department of Otorhinolaryngology, University of Dresden Medical School, Fetscherstrasse 74, Dresden, Germany.

出版信息

Neuroimage. 2013 Aug 15;77:254-61. doi: 10.1016/j.neuroimage.2012.12.057. Epub 2013 Jan 5.

Abstract

The present study compared the temporal and spatial aspects of human olfactory and trigeminal processing. A relatively selective trigeminal stimulus, CO2, and a relatively selective olfactory stimulus, H2S, were delivered with an olfactometer to young, healthy volunteers. The analysis was performed in a classical (5-electrode, main ERPs peaks) and modern approach (high topographical resolution, inverse solution, source localization). Results of microstate segmentation highlighted 5 maps that generally described the two processes at cerebral level. The trigeminal response differed from the olfactory response up to 300ms after stimulus onset. In this time range, source analysis pointed out that the olfactory stimulation involved olfactory related areas, while trigeminal stimulation involved noxious/somatosensory specific brain areas. Moreover, from 300ms on our data showed a similarity between the two processes. Statistical parametrical mapping of the differences between conditions suggested greater activation in a specific motor/sniffing network for the CO2 stimulation (probably related to a regulation of the potential noxious stimulus) and a greater activation of the ipsilateral primary olfactory cortex for H2S.

摘要

本研究比较了人类嗅觉和三叉神经处理的时间和空间方面。使用嗅觉计向年轻健康的志愿者提供相对选择性的三叉神经刺激物 CO2 和相对选择性的嗅觉刺激物 H2S。分析采用经典(5 电极,主要 ERP 峰)和现代方法(高地形分辨率,逆解,源定位)进行。微状态分割的结果突出了 5 个图谱,这些图谱通常描述了大脑水平上的两个过程。三叉神经反应与嗅觉反应不同,直到刺激开始后 300ms。在此时间范围内,源分析指出嗅觉刺激涉及嗅觉相关区域,而三叉神经刺激涉及有害/躯体感觉特异性脑区。此外,从 300ms 开始,我们的数据显示两个过程之间存在相似性。条件之间差异的统计参数映射表明,CO2 刺激时特定的运动/嗅探网络的激活更大(可能与对潜在有害刺激的调节有关),而 H2S 时同侧初级嗅觉皮层的激活更大。

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